托卡马克几何中电子漂移波的径向结构

J. Lewandowski
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引用次数: 2

摘要

介绍了低压托卡马克等离子体中电子漂移波的径向结构。离子是冷的,用静电近似表示波动势。结果表明,漂移波在环面几何中的径向结构问题可采用两步法求解;在第一个近似中,模态的径向结构被忽略,要解决的问题是沿(扩展的)极向角的通常特征模态方程;在第二个近似中,模态振幅以参数(k⊥Ln) -1/2的升序幂展开,其中k⊥是最低阶波矢量的大小,Ln是径向密度尺度长度。讨论了这些径向扩展漂移型模式对反常跨场扩散的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radial structure of electron drift waves in tokamak geometry
The radial structure of electron drift waves in a low-pressure tokamak plasma is presented. The ions are cold and an electrostatic approximation for the fluctuating potential is used. It is shown that problem of the radial structure of drift waves in toroidal geometry is amenable to a two-step solution; in the first approximation, the radial structure of the mode is neglected and the problem to be solved is the usual eigenmode equation along the (extended) poloidal angle; in the second approximation, the mode amplitude is expanded in ascending powers of the parameter (k⊥Ln)–1/2, where k⊥ is the magnitude of the lowest-order wavevector and Ln is the radial density scalelength. The implications of these radially-extended drift-type modes for the anomalous cross-field diffusion are discussed.
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